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THE FLOATING HARBOUR TRANSHIPPER: NEW-GENERATION TRANSHIPMENT OF BULK ORE PRODUCTS

机译:浮动港口转运:批量矿石产品的新一代转运

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Bulk products such as iron ore and coal are usually shipped directly from shore facilities using large bulk carriers. This often involves significant cost due to major dredging operations, long jetties, large storage sheds and the acquisition of large tracts of coastal land. The costs of direct shore to an ocean-going export vessel (OGV) loading often run into billions of dollars - prohibitive for small- to medium-scale mining operations, particularly in remote regions with only distant access to deep water ports. The current industry standard for mitigating these issues is transhipping; the bulk cargo is transported from a smaller shore based facility to the export vessel moored in deep water by a small feeder vessel. Transhipment, while mitigating many of these issues, does introduce other concerns with respect to limiting seastate, environmentally harmful dust and potential spillage during materials transfer. The Australian company Sea Transport Corporation and the Australian Maritime College at the University of Tasmania are developing new technology for bulk ore transhipment: the floating harbour transhipper (FHT). The FHT is essentially a large floating warehouse with an aft well dock to support material transfer operations from the feeder vessel. The major advantages to the mining export industry are in the form of environmental and economic improvements, in some cases completely avoiding expensive dredging while minimising the environmentally invasive onshore infrastructure. In addition, the whole process is enclosed, therefore eliminating grab spillage and dust transport issues common to other transhipping methods. This paper presents an overview of the main hydrodynamic issues currently being investigated: primarily the interaction between multiple floating bodies close to one another in a seaway. The two primary ship-to-ship interactions that are being investigated are the effects experienced by the feeder vessel when it is docking or undocking within the FHT well dock and the interactions between the three vessels when operating in close proximity in an open seaway. A combination of physical scale model experiments and numerical techniques is employed, with a significant portion of the experimental program dedicated to the validation of the numerical simulation codes used to investigate the behaviour of the vessels. ShipMo3D is an object based library developed by DRDC for the purpose of analysing the seakeeping performance of vessels operating in a seaway in either the frequency or time domain. The capabilities of ShipMo3D are applied to this novel application in an attempt to provide realistic simulations of the interaction between the vessels of the FHT system. DualSPHysics, an open source Smoothed Particle Hydrodynamics (SPH) code, is being applied to the domain within the very restricted water environment of the FHT well dock to investigate the fluid flow behaviour and the effect that this has on the feeder vessel when entering/exiting.
机译:铁矿石和煤炭等散装产品通常是使用大型散货船直接从岸边设施运输的。由于主要的挖泥作业,长码头,大仓库棚和大片沿海土地的购置,这通常涉及大量成本。直接装载到远洋出口船(OGV)上的成本通常高达数十亿美元,这对于中小型采矿作业而言是不可行的,特别是在距离深水港较远的偏远地区。缓解这些问题的当前行业标准是转运。散装货物从较小的岸边设施运输到由小型支线船停泊在深水中的出口船。转运虽然减轻了许多此类问题,但确实带来了其他限制,例如限制海况,对环境有害的粉尘以及物料转移期间的潜在溢出。澳大利亚公司Sea Transport Corporation和塔斯马尼亚大学的澳大利亚海事学院正在开发散装矿石转运的新技术:浮港转运船(FHT)。 FHT本质上是一个大型浮式仓库,带有一个船尾井坞,以支持来自进料船的物料转移操作。矿业出口业的主要优势在于环境和经济的改善,在某些情况下,完全避免了昂贵的挖泥工作,同时将对环境造成破坏的陆上基础设施减至最少。此外,整个过程是封闭的,因此消除了其他转运方法常见的抓斗溢出和粉尘运输问题。本文概述了当前正在研究的主要水动力问题:主要是在海道中彼此靠近的多个浮体之间的相互作用。正在研究的两个主要的船对船相互作用是支线船在FHT井坞内对接或取消对接时所经历的影响,以及在近海中近距离操作时三艘船之间的相互作用。结合了物理比例模型实验和数值技术,实验程序的很大一部分致力于验证用于研究容器行为的数值模拟代码。 ShipMo3D是DRDC开发的基于对象的库,目的是分析在频域或时域内在海上航行的船舶的海上航行性能。 ShipMo3D的功能已应用到此新颖的应用程序中,以试图提供FHT系统容器之间相互作用的逼真的模拟。 DualSPHysics是一种开放源代码的平滑粒子流体动力学(SPH)代码,已被应用于FHT井坞的水域非常受限的区域中,以研究进/出时的流体流动行为及其对进料船的影响。

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